首页> 外文期刊>Agriculture, Ecosystems & Environment: An International Journal for Scientific Research on the Relationship of Agriculture and Food Production to the Biosphere >Exploring diversity in soil fertility management of smallholder farms in western Kenya: II. Within-farm variability in resource allocation, nutrient flows and soil fertility status.
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Exploring diversity in soil fertility management of smallholder farms in western Kenya: II. Within-farm variability in resource allocation, nutrient flows and soil fertility status.

机译:在肯尼亚西部探索小农户土壤肥力管理的多样性:II。农场内部资源分配,养分流向和土壤肥力状况的变化。

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Strong gradients of decreasing soil fertility are found with increasing distance from the homestead within smallholder African farms, due to differential resource allocation. As nutrient use efficiency varies strongly along these gradients, such heterogeneity must be considered when designing soil management strategies, aimed at an improved overall resource use efficiency at farm scale. Here, we quantify the magnitude and study the origin of farmer-induced, within-farm soil fertility gradients as affected by biophysical and socio-economic conditions, and investigate farmers' perceptions of such heterogeneity. Farm transects, participatory resource flow mapping, farmers' classification of land qualities, and soil sampling for both chemical and spectral reflectance analyses were performed across 60 farms in three sub-locations (Emuhaia, Shinyalu, Aludeka) representing the variability found in the highlands of western Kenya. Differences between the various field types of a farm were observed for input use (e.g. 0.7-104 kg N ha-1), food production (e.g. 0.6-2.9 t DM ha-1), partial C (e.g. -570 to 1480 kg ha-1) and N (e.g. -92 to 57 kg ha-1) balances and general soil fertility status, despite strong differences across sub-locations. Concentration of nutrients in the home fields compared with the remote fields were verified for extractable P (e.g. 2.1-19.8 mg kg-1) and secondarily for exchangeable K (e.g. 0.14-0.54 cmol(+) kg-1), on average, whereas differences for soil C and N were only important when considering each individual farm separately. Farmers managed their fields according to their perceived land quality, varying the timing and intensity of management practices along soil fertility gradients. Fields classified by them as poor were planted later (up to 33.6 days of delay), with sparser crops (ca. 30% less plants m-2) and had higher weed infestation levels than those classified as fertile, leading to important differences in maize yield (e.g. 0.9 versus 2.4 t ha-1). The internal heterogeneity in resource allocation varied also between farms of different social classes, according to their objectives and factor constraints. Additionally, the interaction of sub-location-specific socio-economic (population, markets) and biophysical factors (soilscape variability) determined the patterns of resource allocation to different activities. Such interactions need to be considered for the characterisation of farming system to facilitate targeting research and development interventions to address the problem of poor soil fertility..
机译:由于资源分配的差异,在非洲小农户中,随着距家园距离的增加,土壤肥力下降的梯度很大。由于养分利用效率沿这些梯度变化很大,因此在设计土壤管理策略时必须考虑这种异质性,以提高农场规模的整体资源利用效率。在这里,我们量化幅度并研究受生物物理和社会经济条件影响的农民诱发的农场内土壤肥力梯度的成因,并调查农民对这种异质性的看法。在三个子地区(Emuhaia,Shinyalu,Aludeka)的60个农场中进行了农场样面,参与性资源流图,农民对土地质量的分类以及化学和光谱反射率分析的土壤采样,这些地区代表了在高地发现的变异性。肯尼亚西部。在投入使用(例如0.7-104 kg N ha-1),粮食产量(例如0.6-2.9 t DM ha-1),部分碳(例如-570至1480 kg ha)之间,观察到了农场不同田间类型之间的差异。 -1)和N(例如-92至57 kg ha-1)平衡和一般土壤肥力状况,尽管各个子区域之间存在很大差异。平均而言,对于可提取的P(例如2.1-19.8 mg kg-1)和其次可交换的K(例如0.14-0.54 cmol(+)kg-1),已验证了与远地相比,本田中养分的浓度。仅当分别考虑每个农场时,土壤C和N的差异才重要。农民根据他们对土地的感知质量来管理田地,沿着土壤肥力梯度改变管理方式的时机和强度。被他们分类为贫困的田地的播种较晚(最多延迟33.6天),作物较稀疏(m-2的植株减少约30%),杂草侵染水平高于被归类为肥沃的土壤,导致玉米发生重要差异产量(例如0.9对2.4 t ha-1)。资源分配的内部异质性也因其目标和因素约束而在不同社会阶层的农场之间也有所不同。此外,特定于子地区的社会经济(人口,市场)和生物物理因素(土壤景观变异性)之间的相互作用决定了资源分配给不同活动的方式。为了确定耕作制度的特征,需要考虑这种相互作用,以促进针对性的研究和开发干预措施,以解决土壤肥力差的问题。

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